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人工神经导管设计的最新进展:管腔填充物输送的策略。

Recent advances in artificial nerve conduit design: strategies for the delivery of luminal fillers.

机构信息

Centre for Nanotechnology and Regenerative Medicine, Division of Surgical & Interventional Sciences, University College London, UK.

出版信息

J Control Release. 2011 Nov 30;156(1):2-10. doi: 10.1016/j.jconrel.2011.07.001. Epub 2011 Jul 6.

Abstract

Artificial nerve conduits offer an attractive alternative to nerve autografts for the repair of peripheral nerve injuries and several commercially-available conduits are currently on the market. However, at present, utilization of these conduits is limited to the repair of nerve gaps less than 3 cm in length. Thus, current research is focused on how best to design artificial conduits with improved nerve regeneration potential over longer distances. Successful nerve regeneration necessitates that the cells, extracellular matrix components, and growth factors involved interact in a highly specific manner that is tightly coordinated. Combinatorial approaches that take into account these interactions and conduits that utilize supportive factors, such as neurotrophins and stem cells, may be key components of the next generation of artificial conduits. Additionally, design strategies that combine physical cues for contact guidance and biochemical signals to enhance cellular function have shown promise. This review highlights recent advances in artificial nerve conduit design, focusing on the use of luminal fillers, with special focus on the various techniques for accessory cell and/or growth factor delivery into artificial nerve conduits.

摘要

人工神经导管为周围神经损伤的修复提供了一种有吸引力的替代自体神经移植的方法,目前已有几种市售的导管。然而,目前,这些导管的应用仅限于修复长度小于 3 厘米的神经间隙。因此,目前的研究重点是如何最好地设计具有更长距离神经再生潜力的人工导管。成功的神经再生需要涉及的细胞、细胞外基质成分和生长因子以高度特化的方式相互作用,并且这种相互作用需要紧密协调。综合考虑这些相互作用的方法以及利用神经营养因子和干细胞等支持因子的导管可能是下一代人工导管的关键组成部分。此外,结合接触引导的物理线索和生化信号来增强细胞功能的设计策略也显示出了前景。本综述重点介绍了人工神经导管设计的最新进展,特别是使用管腔填充物,特别关注将辅助细胞和/或生长因子递送到人工神经导管中的各种技术。

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